Painter Page R
Office of Environmental Health Hazard Assessment, California Environmental Protection, Agency, P.O. Box 4010, Sacramento CA 95812, USA.
Theor Biol Med Model. 2005 Nov 10;2:45. doi: 10.1186/1742-4682-2-45.
Recent theories have attempted to derive the value of the exponent alpha in the allometric formula for scaling of basal metabolic rate from the properties of distribution network models for arteries and capillaries. It has recently been stated that a basic theorem relating the sum of nutrient currents to the specific nutrient uptake rate, together with a relationship claimed to be required in order to match nutrient supply to nutrient demand in 3-dimensional outward-directed networks, leads to Kleiber's law (b = 3/4).
The validity of the supply-demand matching principle and the assumptions required to prove the basic theorem are assessed. The supply-demand principle is evaluated by examining the supply term and the demand term in outward-directed lattice models of nutrient and water distribution systems and by applying the principle to fractal-like models of mammalian arterial systems.
Application of the supply-demand principle to bifurcating fractal-like networks that are outward-directed does not predict 3/4-power scaling, and evaluation of water distribution system models shows that the matching principle does not match supply to demand in such systems. Furthermore, proof of the basic theorem is shown to require that the covariance of nutrient uptake and current path length is 0, an assumption unlikely to be true in mammalian arterial systems.
The supply-demand matching principle does not lead to a satisfactory explanation for the approximately 3/4-power scaling of mammalian basal metabolic rate.
最近的理论试图从动脉和毛细血管的分布网络模型的特性中推导出基础代谢率缩放的异速生长公式中指数α的值。最近有人指出,一个将营养物质流量总和与特定营养物质摄取率相关联的基本定理,以及一个据称在三维外向网络中使营养物质供应与营养物质需求相匹配所需的关系,导致了克莱伯定律(b = 3/4)。
评估供需匹配原则的有效性以及证明基本定理所需的假设。通过检查营养物质和水分布系统的外向晶格模型中的供应项和需求项,并将该原则应用于哺乳动物动脉系统的类分形模型来评估供需原则。
将供需原则应用于外向的分叉类分形网络并不能预测3/4幂缩放,对水分布系统模型的评估表明,在这样的系统中匹配原则无法使供应与需求相匹配。此外,基本定理的证明表明需要营养物质摄取与电流路径长度的协方差为0,这一假设在哺乳动物动脉系统中不太可能成立。
供需匹配原则不能为哺乳动物基础代谢率的约3/4幂缩放提供令人满意的解释。